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US12036629B2ActiveUtilityPatentIndex 62

Arc welding method and arc welding device

Assignee: PANASONIC IP MAN CO LTDPriority: Sep 3, 2015Filed: Sep 14, 2020Granted: Jul 16, 2024
Est. expirySep 3, 2035(~9.2 yrs left)· nominal 20-yr term from priority
Inventors:KAWAMOTO ATSUHIROMATSUI KAITOKOWA MASARUNOGUCHI TAKAHIROFUJIWARA MASASHI
B23K 9/0732B23K 2103/04B23K 9/173B23K 9/124B23K 2103/10B23K 9/095B23K 9/09B23K 9/073
62
PatentIndex Score
0
Cited by
34
References
8
Claims

Abstract

A base material is welded by a first welding method in a case where a welding parameter related to heat input to the base material is less than a first threshold value. The base material is welded by a second welding method in a case where the welding parameter is less than a second threshold value and is more than the first threshold value. The base material is welded by a third welding method in a case where the welding parameter is more than the second threshold value. By adjusting welding conditions regardless of the thickness of the base material, a welding method suitable for the thickness of the base material is determined to provide a welding with little spatter and no meltdown of the base material.

Claims

exact text as granted — not AI-modified
The invention claimed is: 
     
       1. An arc welding method comprising:
 welding a base material by a short-circuit welding, a pulse welding, and a hybrid welding which alternately repeats the short-circuit welding and the pulse welding at a switching period, 
 wherein the switching period is the sum of a period in which the base material is welded by the short-circuit welding and a period in which the base material is welded by the pulse welding in the switching period, and 
 in the hybrid welding, welding the base material by increasing a ratio of the period during which the base material is welded by the pulse welding to the switching period as a welding current or a welding voltage increases. 
 
     
     
       2. The arc welding method of  claim 1 , wherein a welding parameter related to heat input to the base material is one of a welding current, a welding voltage, a wire feed speed of a welding wire, and a thickness of the base material. 
     
     
       3. The arc welding method of  claim 1 , further comprising:
 welding the base material by the short-circuit welding in case where a welding parameter related to heat input to the base material is equal to or less than a first threshold value, 
 welding the base material by the hybrid welding in a case where the welding parameter is less than a second threshold value and is more than the first threshold value, or 
 welding the base material by the pulse welding in case where the welding parameter is equal to or more than the second threshold value, 
 wherein the welding parameter is a welding current, 
 wherein the base material is made of a soft steel-based material, 
 wherein the first threshold value is equal to 180 A, or more than 180 A and less than 220 A, and 
 wherein the second threshold value is equal to 270 A, or more than 270 A and less than 320 A. 
 
     
     
       4. The arc welding method of  claim 1 , further comprising:
 welding the base material by the short-circuit welding in case where a welding parameter related to heat input to the base material is equal to or less than a first threshold value, 
 welding the base material by the hybrid welding in a case where the welding parameter is less than a second threshold value and is more than a first threshold value, or 
 welding the base material by the pulse welding in case where the welding parameter is equal to or more than the second threshold value, 
 wherein the welding parameter is a welding current, 
 wherein the base material is made of aluminum-based material, 
 wherein the first threshold value is equal to 80 A, or more than 80 A and less than 120 A, and 
 wherein the second threshold value is equal to 150 A, or more than 150 A and less than 200 A. 
 
     
     
       5. An arc welding device configured to weld a base material using a welding wire, the arc welding device comprising:
 a switching block that controls a welding current and a welding voltage; 
 a current detector that detects the welding current; 
 a voltage detector that detects the welding voltage; 
 a feed motor that feeds the welding wire at a feed speed; and 
 a controller that controls the switching block, 
 wherein the controller is configured to control the switching block so as to: 
 weld the base material by a short-circuit welding, by a pulse welding, and by a hybrid welding which alternately repeats a short-circuit welding and a pulse welding at a switching period, and 
 wherein the controller is configured to control the switching block, so as to weld the base material by the hybrid welding by increasing a ratio between a duration in the switching period for which the base material is welded by the short-circuit welding and a duration in the switching period for which the base material is welded by the pulse welding, as the welding current or the welding voltage increases. 
 
     
     
       6. The arc welding device of  claim 5 ,
 wherein the controller is configured to control the switching block so as to:
 weld the base material by a first welding method which is a short-circuit welding while alternately repeating a forward feeding of feeding the welding wire toward the base material and a reverse feeding of feeding the welding wire away from the base material, in the case where a welding parameter related to heat input to the base material is less than a first threshold value, and 
 weld the base material by a second welding method which is the hybrid welding while alternately repeating the forward feeding and the reverse feeding, in the case where the welding parameter related to heat input to the base material is less than a second threshold value and is more than the first threshold value. 
 
 
     
     
       7. The arc welding device of  claim 5 , wherein the controller is configured to control the switching block, so as to weld the base material by the hybrid welding by increasing a ratio of the duration for which the base material is welded by the pulse welding to the switching period as the welding current or the welding voltage is increased, in the case where the welding parameter related to heat input to the base material is less than the second threshold value and is more than the first threshold value. 
     
     
       8. The arc welding device of  claim 6 , wherein the controller is configured to control the switching block, so as to weld the base material by the hybrid welding by increasing a ratio of the duration for which the base material is welded by the pulse welding to the switching period as the welding current or the welding voltage is increased, in the case where the welding parameter related to heat input to the base material is less than the second threshold value and is more than the first threshold value.

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